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The theory of long-range Josephson current through a single-crystal ferromagnet nanowire the proposed theoretical model, the long-range proximity effect observed in the Co single-crystalline nanowire

The theory of long-range Josephson current through a single-crystal ferromagnet nanowire the proposed theoretical model, the long-range proximity effect observed in the Co single-crystalline nanowire

Spin screening and inverse proximity effect in F/S nanostructures magnetic moment embedded in the superconducting film is screened in aggregate by the long-range

Exchange model of proximity effect for F/S nanostructuresWe propose the exchange model of proximity effect in the ferromagnetic insulator

Superconducting triplet proximity and Josephson spin valves
effect superconducting spin valves. Applied to Josephson junctions’ physics, a robust long-range pairing

Spin screening and inverse proximity effect in F/S nanostructures magnetic moment embedded in the superconducting film is screened in aggregate by the long-range

Exchange model of proximity effect for F/S nanostructuresWe propose the exchange model of proximity effect in the ferromagnetic insulator

Proximity effects in superconducting triplet spin-valve F2/F1/S trilayers (Fi is a ferromagnetic metal and S is a singlet superconductor), where the long-range triplet

Long-range spin-singlet proximity effect for a Josephson system with a single-crystal ferromagnet due to its band-structure features© 2018 American Physical Society. A possible explanation for the long-range proximity effect

Conductance spectroscopy inferromagnet–superconductor hybridsWe present a theoretical model for the proximity effect in F–SFF–F structures (where F is a

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